Renita et al., 2018 - Google Patents
Comparison of Public Key Algorithms for Lightweight and Low Cost SystemRenita et al., 2018
View PDF- Document ID
- 8246338777533970972
- Author
- Renita J
- Elizabeth N
- Shankar N
- Sundar R
- Sruthi K
- Publication year
- Publication venue
- 2018 Tenth International Conference on Advanced Computing (ICoAC)
External Links
Snippet
As resource-constrained devices such as RFID and smart cards are being widely developed and used, there is an increase in the need for an efficient lightweight cryptographic algorithm. Elliptic Curve Cryptography is one type of public key cryptography which provides …
- 238000004088 simulation 0 abstract description 16
Classifications
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- G06F7/72—Methods or arrangements for performing computations using a digital non-denominational number representation, i.e. number representation without radix; Computing devices using combinations of denominational and non-denominational quantity representations, e.g. using difunction pulse trains, STEELE computers, phase computers using residue arithmetic
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- H04L9/3066—Public key, i.e. encryption algorithm being computationally infeasible to invert or user's encryption keys not requiring secrecy involving algebraic varieties, e.g. elliptic or hyper-elliptic curves
- H04L9/3073—Public key, i.e. encryption algorithm being computationally infeasible to invert or user's encryption keys not requiring secrecy involving algebraic varieties, e.g. elliptic or hyper-elliptic curves involving pairings, e.g. identity based encryption [IBE], bilinear mappings or bilinear pairings, e.g. Weil or Tate pairing
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- H04L9/0838—Key agreement, i.e. key establishment technique in which a shared key is derived by parties as a function of information contributed by, or associated with, each of these
- H04L9/0841—Key agreement, i.e. key establishment technique in which a shared key is derived by parties as a function of information contributed by, or associated with, each of these involving Diffie-Hellman or related key agreement protocols
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